TOP
8510C Agilent Network Analyzer
Additional Features: Thru-Reflect-Line precision two-port calibration for coaxial measurements Line-Reflect-Match calibration for on-wafer and in-fixture applications 45 MHz to 110 GHz frequency range Real-time error-corrected measurements 60 dB effective directivity and source match 80 to 100 dBm of dynamic range available 0.001 dB, 0.01 degree, 0.01 ns measurement resolution Data storage on an internal 3.5 disk drive or data output to an HP-IB or serial (RS-232) plotter or printer Four S-parameter color display Modular to configure to your needs The Agilent 8510C continues to provide the best performance to meet your new design and test challenges. With unmatched accuracy and convenience, this vector network analyzer makes broadband measurements from 45 MHz to 50 GHz in 2.4 mm coax, from 45 MHz to 110 GHz in 1.0 mm coax and from 33 GHz to 110 GHz in waveguide bands. The Agilent 8510C measures the magnitude, phase, and group delay of two-port networks to characterize their linear behavior.
REQUEST A QUOTE
Stock
|
Detail
|
Option
|
Download
|
Video
8510C Agilent Network Analyzer
Price: CALL
Detail
Additional Features: Thru-Reflect-Line precision two-port calibration for coaxial measurements Line-Reflect-Match calibration for on-wafer and in-fixture applications 45 MHz to 110 GHz frequency range Real-time error-corrected measurements 60 dB effective directivity and source match 80 to 100 dBm of dynamic range available 0.001 dB, 0.01 degree, 0.01 ns measurement resolution Data storage on an internal 3.5 disk drive or data output to an HP-IB or serial (RS-232) plotter or printer Four S-parameter color display Modular to configure to your needs The Agilent 8510C continues to provide the best performance to meet your new design and test challenges. With unmatched accuracy and convenience, this vector network analyzer makes broadband measurements from 45 MHz to 50 GHz in 2.4 mm coax, from 45 MHz to 110 GHz in 1.0 mm coax and from 33 GHz to 110 GHz in waveguide bands. The Agilent 8510C measures the magnitude, phase, and group delay of two-port networks to characterize their linear behavior.
Option
Download
Video